Rotary dampers, speed control dampers

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Phytron GmbH

Rotary damper / for stepper motors - 29 - 37 mm | DMP 29 / 37

The DMP 29/37 is an inertial damper system, suitable for various stepper motors. In addition, it is possible to enjoy using the reliable damping component without any loss of torque, while the inertial damper can also improve the characteristics of the stepper motor...

Rotary damper / for stepper motors - 29 - 37 mm | DMP 29 / 37

The DMP 29/37 is an inertial damper system, suitable for various stepper motors. In addition, it is possible to enjoy using the reliable damping component without any loss of torque, while the inertial damper can also improve the characteristics of the stepper motor applications, simply by the reduction of the settling times, as well as by supression of the system resonances. The design of the dampers is suitable for stepper motors of size 34 and 37, while these devices are often used in optical applications and several sensitive environments.

The inertial damper for stepper motors comes with a second shaft of size 32 or 42, while the external diameter between 29 and 37 mm and the ability to mount the product onto a motor shaft are other major advantages. Next, the headless screws are suitable for mounting in accordance to the ISO 4027 standards, while in terms of the environmental conditions, the ambient temperature supported is between 0 and 60 degrees Celsius. The item can be stored between -20 and 70 degrees Celsius.
Skiffy

Rotary damper / bidirectional - 078-1 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Clip...

Rotary damper / bidirectional - 078-1 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Clip...

Rotary damper / bidirectional - 078-2 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Clip mounting...

Rotary damper / bidirectional - 078-2 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Clip mounting...

Rotary damper / bidirectional - 078-3 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Reverse...

Rotary damper / bidirectional - 078-3 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Reverse...

Rotary damper / bidirectional - 078-4 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Big...

Rotary damper / bidirectional - 078-4 series



Made from POM, Nylon 66, PC, Silicone, Silicon oil
Big...

Rotary damper / bidirectional - 078-5 series



Made from POM, Nylon 66, GF, NBR, Silicon oil
Big damper...

Rotary damper / bidirectional - 078-5 series



Made from POM, Nylon 66, GF, NBR, Silicon oil
Big damper...
Lin Engineering

Rotary damper / for stepper motors - 0.05 s

The Nema 17 Damper model is manufactured by Line Engineering, and is a motor damper that has an inertia which makes the rotor oscillate....

Rotary damper / for stepper motors - 0.05 s

The Nema 17 Damper model is manufactured by Line Engineering, and is a motor damper that has an inertia which makes the rotor oscillate. There is a natural back and forth movement which can contribute to the erratic movement of motors.

There is also a reduced step response time can eventually result in more enhanced motor performance. It has a settling time of 0.5 s with the damper, and 0.05 s without the use of a damper. It also has an inertia of 11.71 gm-cm, which has a shaft size of 5 mm.

Rotary damper / for stepper motors - 0.036 s

The Nema 23 dampers from Lin has a durable construction and is designed to reduce resonance. The inertia produced by the motor step might...

Rotary damper / for stepper motors - 0.036 s

The Nema 23 dampers from Lin has a durable construction and is designed to reduce resonance. The inertia produced by the motor step might cause an erratic movement in the motors. This damper, when added to the motor shaft, minimizes these oscillations and eases the motion. It generates a reduced step response that delivers an effective motor performance. The average motor settling time with a damper measures at 0.15 seconds. When a damper is installed, the settling time is reduced to 0.036 seconds generating 4 times less resonance.
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